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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Experimental investigation of multistage electrodialysis for seawater desalination
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Experimental investigation of multistage electrodialysis for seawater desalination

机译:海水淡化多级电渗析的实验研究

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Electrodialysis (ED) is currently used for selective removal of ions and brackish water desalination, while for seawater desalination ED is considered to be too energy intensive. This research focuses on the viability of ED using multiple stages for seawater desalination. With staging, the driving force is adapted to the governing conditions at that specific stage, operating at its individual optimum at lower energy consumption. An ED multistage configuration is examined that contains up to four stages. We compare single stage with multistage ED and investigate the effect of operation parameters. Different current densities are applied and optimized and residence time is compared to describe both transmembrane salt and water fluxes. We showed that desalination from 500 mM to 200 mM is possible, but that for these desalination conditions a multistage and single-stage system perform equal. Operation of each stage of the multistage close to limiting current density shows that desalination of synthetic seawater close to drinking water quality is possible. To reach this, the energy consumption is 3.6 kWh/m3 and at least 4 stages are needed. Although outlet concentrations between ED and RO are different, this non-optimized ED system showed double the energy consumption of the state-of-the-art desalination technology RO.
机译:电渗析(ED)目前用于选择性去除离子和咸水水脱盐,而海水淡化ED被认为是过于能量密集的。本研究侧重于使用海水淡化多个阶段的ED的可行性。通过分段,驱动力适于在该特定阶段的控制条件,在其个体上以较低的能量消耗运行。检查最多四个阶段的ED多级配置。我们将单级与多级ED进行比较并调查操作参数的效果。应用不同的电流密度,并进行优化,并将停留时间进行比较,以描述跨膜盐和水通量。我们表明,500 mm至200毫米的脱盐是可能的,但是对于这些脱盐条件,多级和单级系统执行相等。多阶段的每个阶段的操作接近限制电流密度,显示了靠近饮用水质量的合成海水的脱盐。为了达到这一点,能量消耗是3.6千瓦时/ m3,需要至少4个阶段。尽管ED和RO之间的出口浓度是不同的,但这种非优化的ED系统显示了最先进的海水淡化技术RO的能耗。

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